Korea University · Engineering
Professor Hyung-Min Lee's research lab specializes in low-power, high-efficiency integrated circuits for implantable and wireless biomedical systems, with a focus on inductive power transfer and neurostimulation. The lab develops advanced active rectifiers, voltage doublers, and switched-capacitor-based stimulators using CMOS technology to enable reliable, energy-efficient operation in implantable medical devices such as deep brain stimulators. Key innovations include adaptive topology reconfiguration, offset-controlled high-speed comparators, and closed-loop control for improved power conversion efficiency and tissue safety. The lab's work bridges microelectronics and neuroscience, targeting next-generation neuromodulation systems with enhanced performance and biocompatibility.
Figures are computed from collected data and may differ slightly.
A power-efficient wireless stimulating system for a head-mounted deep brain stimulator (DBS) is presented. A new adaptive rectifier generates a variable DC supply voltage from a constant AC power carrier utilizing phase control feedback, while achieving high AC-DC power conversion efficiency (PCE) through active synchronous switching. A current-controlled stimulator adopts closed-loop supply control to automatically adjust the stimulation compliance voltage by detecting stimulation site potentia
We present an active full-wave rectifier with offset-controlled high speed comparators in standard CMOS that provides high power conversion efficiency (PCE) in high frequency (HF) range for inductively powered devices. This rectifier provides much lower dropout voltage and far better PCE compared to the passive on-chip or off-chip rectifiers. The built-in offset-control functions in the comparators compensate for both turn-on and turn-off delays in the main rectifying switches, thus maximizing t
A power-efficient wireless switched-capacitor based stimulating (SCS) system for electrical/optical deep brain stimulation (DBS) is presented. The SCS system efficiently charges storage capacitors directly from an inductive link and delivers accurately balanced charge to the tissue, improving the overall stimulator efficiency. In addition, the decaying exponential stimulus pulses generated by SCS can be more effective than conventional rectangular and ramp stimuli in activating neural tissue whe
We present an adaptive reconfigurable active voltage doubler (VD)/rectifier (REC) (VD/REC) in standard CMOS, which can adaptively change its topology to either a VD or a REC by sensing the output voltage, leading to more robust inductive power transmission over an extended range. Both active VD and REC modes provide much lower dropout voltage and far better power conversion efficiency (PCE) compared to their passive counterparts by adopting offset-controlled high-speed comparators that drive the
In this paper, we present a fully integrated active voltage doubler in CMOS technology using offset-controlled high speed comparators for extending the range of inductive power transmission to implantable microelectronic devices (IMD) and radio-frequency identification (RFID) tags. This active voltage doubler provides considerably higher power conversion efficiency (PCE) and lower dropout voltage compared to its passive counterpart and requires lower input voltage than active rectifiers, leading
We present an adaptive reconfigurable active voltage doubler (VD)/rectifier (REC) (VD/REC) in standard CMOS, which can adaptively change its topology to either a VD or a REC by sensing the output voltage, leading to more robust inductive power transmission over an extended range. Both active VD and REC modes provide much lower dropout voltage and far better power conversion efficiency (PCE) compared to their passive counterparts by adopting offset-controlled high-speed comparators that drive the
The 1,927-nm thulium fiber fractional laser is a safe, effective treatment for photoaging and melasma in Asians.
A power-efficient wireless capacitor charging system for inductively powered applications has been presented. A bank of capacitors can be directly charged from an ac source by generating a current through a series charge injection capacitor and a capacitor charger circuit. The fixed charging current reduces energy loss in switches, while maximizing the charging efficiency. An adaptive capacitor tuner compensates for the resonant capacitance variations during charging to keep the amplitude of the
Based on a theoretical proposition that public diplomacy can be explicated as management of organization–public relationship (OPR) between an organization concerned and foreign publics, practical and functional utility of OPR measures was empirically investigated in this preliminary study within a public diplomacy context involving the US embassy in Seoul and South Korean college students. Validating reliability and validity of Hon and J. E. Grunig's (1999 Hon , L. C. , & Grunig , J. E. ( 1999 )
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An embedded DAC requires a large number of input transistors (=2 <sup xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">N+1</sup> for N-bit interpolation) in its amplifier. Moreover, the transistors require large width and length for accurate matching, leading to an area penalty in the amplifier for high bit interpolation (e.g. N>3). In this paper, an area-efficient and accurate interpolation method that uses variable-current control (VCC) for 10b mobile A
Ethylene‐vinyl acetate copolymer (EVA) with 40 wt.% vinyl acetate content (EVA40)/organoclay nanocomposites were prepared using a melt intercalation method with several different clay concentrations (2.5, 5.0, 7.5, and 10.0 wt.%). X‐ray diffraction confirmed the formation of exfoliated nanocomposite in all cases with disappearance of the characteristic peak corresponding to the d‐spacing of the pristine organoclay. Transmission electron microscopy studies also showed an exfoliated morphology of
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